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Solution - Properties of ellipses

Equation in standard form x264+y214=1
\frac{x^2}{64}+\frac{y^2}{14}=1
Center (0,0)
(0, 0)
Radius of the major axis 8
8
Vertex_1 (8,0)
(8, 0)
Vertex_2 (8,0)
(-8, 0)
Radius of the minor axis 3.742
3.742
Co-vertex_1 (0,3.742)
(0, 3.742)
Co-vertex_2 (0,3.742)
(0, -3.742)
Focal length 7.071
7.071
Focus_1 (7.071,0)
(7.071, 0)
Focus_2 (7.071,0)
(-7.071, 0)
Area 29.936π
29.936π
x-intercepts (8,0),(8,0)
(8, 0), (-8, 0)
y-intercepts (0,3.742),(0,3.742)
(0, 3.742), (0, -3.742)
Eccentricity 0.884
0.884

Step-by-step explanation

Why learn this

If you cut a carrot in half across its grain (like this: =|> ) the resulting cross-section would be circular and, therefore, somewhat easy to measure. But what if you cut the same carrot across the grain at an angle (like this: =/> )? The resulting shape would be more of an ellipse and measuring it would prove to be a bit more difficult than measuring a plain old circle. But why would you need to measure the cross section of a carrot to begin with?
Well... you probably would not, but such occurrences of ellipses in nature are actually quite common, and understanding them from a mathematical perspective can be useful in many different contexts. Fields such as art, design, architecture, engineering, and astronomy all rely at times on ellipses - from painting portraits, to building homes, to measuring the orbit of moons, planets, and comets.

Terms and topics